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Deep sequencing in library selection projects: what insight does it bring?

机译:图书馆选择项目中的深度测序:它带来什么见解?

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摘要

High throughput sequencing is poised to change all aspects of the way antibodies and other binders are discovered and engineered. Millions of available sequence reads provide an unprecedented sampling depth able to guide the design and construction of effective, high quality naive libraries containing tens of billions of unique molecules. Furthermore, during selections, high throughput sequencing enables quantitative tracing of enriched clones and position-specific guidance to amino acid variation under positive selection during antibody engineering. Successful application of the technologies relies on specific PCR reagent design, correct sequencing platform selection, and effective use of computational tools and statistical measures to remove error, identify antibodies, estimate diversity, and extract signatures of selection from the clone down to individual structural positions. Here we review these considerations and discuss some of the remaining challenges to the widespread adoption of the technology.
机译:高通量测序有望改变抗体和其他结合物的发现和工程方法的各个方面。数以百万计的可用序列读数提供了前所未有的采样深度,能够指导设计和构建包含数百亿个独特分子的高质量原始数据库。此外,在选择过程中,高通量测序可对富集克隆进行定量追踪,并在抗体工程化过程中在阳性选择下对氨基酸变异进行位置特异性指导。该技术的成功应用取决于特定的PCR试剂设计,正确的测序平台选择以及有效使用计算工具和统计手段来消除错误,识别抗体,估计多样性并从克隆中提取选择的特征,直至各个结构位置。在这里,我们回顾了这些考虑因素,并讨论了该技术广泛采用所面临的一些挑战。

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